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首页> 外文期刊>Environmental Science and Pollution Research >The effects of ocean acidification and a carbon dioxide capture and storage leak on the early life stages of the marine mussel Perna perna (Linneaus, 1758) and metal bioavailability
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The effects of ocean acidification and a carbon dioxide capture and storage leak on the early life stages of the marine mussel Perna perna (Linneaus, 1758) and metal bioavailability

机译:海洋酸化的影响和二氧化碳捕获和储存泄漏对海洋贻贝珀纳珀纳(Linneaus,1758)和金属生物利用度的早期生命阶段

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摘要

The study assesses the effects of carbon dioxide capture and storage (CCS) leaks and ocean acidification (OA) on the metal bioavailability and reproduction of the mytilid Perna perna. In laboratory-scale experiments, CCS leakage scenarios (pH 7.0, 6.5, 6.0) and one OA (pH 7.6) scenario were tested using metal-contaminated sediment elutriates and seawater from Santos Bay. The OA treatment did not have an effect on fertilisation, while significant effects were observed in larval-development bioassays where only 16 to 27 % of larva developed normally. In treatments that simulated CO2 leaks, when compared with control, fertilisation success gradually decreased and no larva developed to the D-shaped stage. A fall in pH increased the bioavailability of metals to marine mussels. Larva shell size was significantly affected by both elutriates when compared with seawater; moreover, a significant difference occurred at pH 6.5 between elutriates in the fertilisation bioassay.
机译:该研究评估了二氧化碳捕获和储存(CCS)泄漏和海洋酸化(OA)对霉菌的金属生物利用度和繁殖的影响。 在实验室规模的实验中,使用来自Santos Bay的金属污染的沉积物和海水测试CCS泄漏场景(pH 7.0,6.5,6.0)和一个OA(pH7.6)场景。 OA治疗没有对施肥的影响,而在幼虫显影生物测定中观察到显着影响,其中仅16至27%的幼虫正常发育。 在模拟二氧化碳泄漏的处理中,与对照相比,施肥成功逐渐减少,没有幼虫到D形阶段。 pH下降增加了金属对海洋贻贝的生物利用度。 与海水相比,幼虫壳大小受到淡种的显着影响; 此外,在施肥生物测定中的elutriat之间的pH6.5中发生显着差异。

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